Cargando…

Study on thermal behavior and kinetics of Al/MnO(2) poly(vinylidene fluorine) energetic nanocomposite assembled by electrospray

To explore the effect of the addition of poly(vinylidene fluorine) (PVDF) to a nanothermite system, an Al/MnO(2)/PVDF energetic nanocomposite was prepared using an electrospray method, Al/MnO(2) nanothermite was prepared as a control group. Then, the energetic nanocomposite and nanothermite were tes...

Descripción completa

Detalles Bibliográficos
Autores principales: Song, Jiaxing, Guo, Tao, Ding, Wen, Yao, Miao, Bei, Fengli, Zhang, Xiaonan, Huang, Junyi, Fang, Xiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9069881/
https://www.ncbi.nlm.nih.gov/pubmed/35530085
http://dx.doi.org/10.1039/c9ra04425f
_version_ 1784700523483496448
author Song, Jiaxing
Guo, Tao
Ding, Wen
Yao, Miao
Bei, Fengli
Zhang, Xiaonan
Huang, Junyi
Fang, Xiang
author_facet Song, Jiaxing
Guo, Tao
Ding, Wen
Yao, Miao
Bei, Fengli
Zhang, Xiaonan
Huang, Junyi
Fang, Xiang
author_sort Song, Jiaxing
collection PubMed
description To explore the effect of the addition of poly(vinylidene fluorine) (PVDF) to a nanothermite system, an Al/MnO(2)/PVDF energetic nanocomposite was prepared using an electrospray method, Al/MnO(2) nanothermite was prepared as a control group. Then, the energetic nanocomposite and nanothermite were tested and analyzed by XRD, FE-SEM and TG-DSC, and the reaction products were collected. The results show that energetic nanocomposite would have three obvious exothermic peaks in the range of room temperature to 800 °C with a total more than 1700 J g(−1) heat release while the control experiment, Al/MnO(2) nanothermite, could be found one exothermic peak with a 1100 J g(−1) heat release. The residues are mainly MnAl(2)O(4), MnF(2) and AlF(3) which indicates that Al/MnO(2)/PVDF energetic nanocomposite could make full use of manganese oxide. Finally, thermal analysis experiments were carried out under different heating rates to calculate the activation energy. The calculation results show that the addition of PVDF could significantly reduce the activation energy, which would help spark the thermite at comparatively low energy and temperature.
format Online
Article
Text
id pubmed-9069881
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90698812022-05-05 Study on thermal behavior and kinetics of Al/MnO(2) poly(vinylidene fluorine) energetic nanocomposite assembled by electrospray Song, Jiaxing Guo, Tao Ding, Wen Yao, Miao Bei, Fengli Zhang, Xiaonan Huang, Junyi Fang, Xiang RSC Adv Chemistry To explore the effect of the addition of poly(vinylidene fluorine) (PVDF) to a nanothermite system, an Al/MnO(2)/PVDF energetic nanocomposite was prepared using an electrospray method, Al/MnO(2) nanothermite was prepared as a control group. Then, the energetic nanocomposite and nanothermite were tested and analyzed by XRD, FE-SEM and TG-DSC, and the reaction products were collected. The results show that energetic nanocomposite would have three obvious exothermic peaks in the range of room temperature to 800 °C with a total more than 1700 J g(−1) heat release while the control experiment, Al/MnO(2) nanothermite, could be found one exothermic peak with a 1100 J g(−1) heat release. The residues are mainly MnAl(2)O(4), MnF(2) and AlF(3) which indicates that Al/MnO(2)/PVDF energetic nanocomposite could make full use of manganese oxide. Finally, thermal analysis experiments were carried out under different heating rates to calculate the activation energy. The calculation results show that the addition of PVDF could significantly reduce the activation energy, which would help spark the thermite at comparatively low energy and temperature. The Royal Society of Chemistry 2019-08-13 /pmc/articles/PMC9069881/ /pubmed/35530085 http://dx.doi.org/10.1039/c9ra04425f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Song, Jiaxing
Guo, Tao
Ding, Wen
Yao, Miao
Bei, Fengli
Zhang, Xiaonan
Huang, Junyi
Fang, Xiang
Study on thermal behavior and kinetics of Al/MnO(2) poly(vinylidene fluorine) energetic nanocomposite assembled by electrospray
title Study on thermal behavior and kinetics of Al/MnO(2) poly(vinylidene fluorine) energetic nanocomposite assembled by electrospray
title_full Study on thermal behavior and kinetics of Al/MnO(2) poly(vinylidene fluorine) energetic nanocomposite assembled by electrospray
title_fullStr Study on thermal behavior and kinetics of Al/MnO(2) poly(vinylidene fluorine) energetic nanocomposite assembled by electrospray
title_full_unstemmed Study on thermal behavior and kinetics of Al/MnO(2) poly(vinylidene fluorine) energetic nanocomposite assembled by electrospray
title_short Study on thermal behavior and kinetics of Al/MnO(2) poly(vinylidene fluorine) energetic nanocomposite assembled by electrospray
title_sort study on thermal behavior and kinetics of al/mno(2) poly(vinylidene fluorine) energetic nanocomposite assembled by electrospray
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9069881/
https://www.ncbi.nlm.nih.gov/pubmed/35530085
http://dx.doi.org/10.1039/c9ra04425f
work_keys_str_mv AT songjiaxing studyonthermalbehaviorandkineticsofalmno2polyvinylidenefluorineenergeticnanocompositeassembledbyelectrospray
AT guotao studyonthermalbehaviorandkineticsofalmno2polyvinylidenefluorineenergeticnanocompositeassembledbyelectrospray
AT dingwen studyonthermalbehaviorandkineticsofalmno2polyvinylidenefluorineenergeticnanocompositeassembledbyelectrospray
AT yaomiao studyonthermalbehaviorandkineticsofalmno2polyvinylidenefluorineenergeticnanocompositeassembledbyelectrospray
AT beifengli studyonthermalbehaviorandkineticsofalmno2polyvinylidenefluorineenergeticnanocompositeassembledbyelectrospray
AT zhangxiaonan studyonthermalbehaviorandkineticsofalmno2polyvinylidenefluorineenergeticnanocompositeassembledbyelectrospray
AT huangjunyi studyonthermalbehaviorandkineticsofalmno2polyvinylidenefluorineenergeticnanocompositeassembledbyelectrospray
AT fangxiang studyonthermalbehaviorandkineticsofalmno2polyvinylidenefluorineenergeticnanocompositeassembledbyelectrospray